First detection of X-ray polarization in thermal state of LMC X-3: Spectro-polarimetric study with IXPE
arXiv:2309.06845
Abstract
We report a comprehensive spectro-polarimetric study of the black hole binary LMC X using simultaneous {\it IXPE}, {\it NICER} and {\it NuSTAR} observations in 0.520 keV energy band. The broad-band energy spectrum (0.520 keV) with {\it NICER} and {\it NuSTAR} is well described by the disc emission of temperature 1.1 keV and a weak Comptonizing tail beyond 10 keV. This evidently suggests a disc-dominated spectral state of the source with disc contribution of 96\%. The lack of variability (0.5\%) in the power spectrum further corroborates the high/soft nature of the source. A significant polarization degree (PD) of 3.040.40\% (>7) at a polarization angle (PA) of 44.243.77 (>7) is found in 28 keV energy range of {\it IXPE}. In addition, PD is seen to increase with energy up to 4.350.98\% (>3) in 48 keV band. Further, we attempt to constrain the source spin () using broad-band spectral modelling that indicates a weakly rotating `hole' in LMC X with ( confidence). Based on the spectro-polarimetric results, we infer that the polarization in LMC X is resulted possibly due to the combined effects of the direct and/or reflected emissions from a partially ionized disc atmosphere. Finally, we discuss the relevance of our findings.
6 pages, 4 figures, 3 tables, accepted for publication in MNRAS Letters